Nuclear Emulsion Film Detectors for Proton Radiography: Design and Test of the First Prototype
S. Braccini, A. Ereditato, I. Kreslo, U. Moser, C. Pistillo, P., Scampoli, S. Studer

TL;DR
This paper introduces a novel nuclear emulsion film detector for proton radiography, demonstrating its design, construction, and initial testing with promising imaging results using proton beams.
Contribution
The work presents the first prototype of a nuclear emulsion-based detector for proton radiography, combining high-precision tracking with automated scanning technology.
Findings
Successful imaging of simple phantoms with proton beams
High-precision proton track reconstruction achieved
Potential for improved tissue density imaging in proton therapy
Abstract
Proton therapy is nowadays becoming a wide spread clinical practice in cancer therapy and sophisticated treatment planning systems are routinely used to exploit at best the ballistic properties of charged particles. The information on the quality of the beams and the range of the protons is a key issue for the optimization of the treatment. For this purpose, proton radiography can be used in proton therapy to obtain direct information on the range of the protons, on the average density of the tissues for treatment planning optimization and to perform imaging with negligible dose to the patient. We propose an innovative method based on nuclear emulsion film detectors for proton radiography, a technique in which images are obtained by measuring the position and the residual range of protons passing through the patient's body. Nuclear emulsion films interleaved with tissue equivalent…
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